College of Engineering, China Agricultural University, Beijing, China.
Pest Manag Sci. 2022 Nov;78(11):4892-4904. doi: 10.1002/ps.7110. Epub 2022 Aug 25.
Air-assisted sprayers is one of the primary fruit tree pest control approaches in agricultural production. It is necessary to study the influence of multiple factors on both wind field and droplet coverage of air-assisted sprayers. In this article, foliage area volume density (FAVD) and power gradient were considered factors, and field tests were conducted in an orchard to determine such influence.
The results showed that in-canopy wind speed was mainly affected by the air-assisted sprayer. FAVD showed significance to the wind speed and droplet coverage inside canopies (P < 0.001), compared with power gradient (P > 0.05). With the increase of FAVD, the wind speed in the bottom layer of canopies first increased and then decreased, while the wind speed in the middle and top layers first decreased and then increased. Meanwhile, the wind field was mainly concentrated on the surface of canopies and gradually approached the canopy center as the power gradient increased. Furthermore, a Back-Propagation (BP) neural network prediction model was constructed to predict droplet coverage at any canopy location to avoid repeated experiments. The overall correlation coefficient (R) of this model was about 0.731, indicating good fitting performance.
FAVD has a significant effect on wind speed and droplet deposition inside the canopy, and the air-assisted sprayer parameter setting should consider the effect of FAVD. The prediction model can predict droplet deposition inside the canopy without repeating. The study can provide a reference for selecting operating parameters of air-assisted sprayers and help reduce droplet loss and environmental pollution. © 2022 Society of Chemical Industry.
气力喷雾机是农业生产中果树病虫害防治的主要方法之一。有必要研究多种因素对气力喷雾机风场和雾滴覆盖的影响。本文以叶面积体积密度(FAVD)和功率梯度为因素,在果园进行田间试验,确定其影响。
结果表明,冠层内风速主要受气力喷雾机的影响。FAVD 对冠层内风速和雾滴覆盖的影响显著(P<0.001),而功率梯度(P>0.05)的影响不显著。随着 FAVD 的增加,冠层底层风速先增加后减小,而中层和顶层风速先减小后增加。同时,随着功率梯度的增加,风场主要集中在冠层表面,并逐渐向冠层中心靠近。此外,构建了一个反向传播(BP)神经网络预测模型,以预测任意冠层位置的雾滴沉积,从而避免重复实验。该模型的整体相关系数(R)约为 0.731,表明拟合性能良好。
FAVD 对冠层内风速和雾滴沉积有显著影响,气力喷雾机的参数设置应考虑 FAVD 的影响。该预测模型可以预测冠层内的雾滴沉积,无需重复实验。该研究可为选择气力喷雾机的作业参数提供参考,有助于减少雾滴损失和环境污染。© 2022 英国化学学会。